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Ch. 7 - Transcendental Functions
Hass - Thomas' Calculus 15th Edition
Hass15th EditionThomas' CalculusISBN: 9780137616077당신이 사용하는 게 아니라요?교과서 변경
7장, 문제 7.3.103

Evaluate the integrals in Exercises 97–110.
103. ∫₁⁴ (ln 2 · log₂x / x) dx

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1
Recognize that the integral is \( \int_1^4 \frac{\ln 2 \cdot \log_2 x}{x} \, dx \). Notice that \( \ln 2 \) is a constant and \( \log_2 x \) is the logarithm base 2 of \( x \).
Recall the change of base formula for logarithms: \( \log_2 x = \frac{\ln x}{\ln 2} \). Substitute this into the integral to rewrite the integrand in terms of natural logarithms.
After substitution, the integrand becomes \( \frac{\ln 2 \cdot \frac{\ln x}{\ln 2}}{x} = \frac{\ln x}{x} \). This simplifies the integral to \( \int_1^4 \frac{\ln x}{x} \, dx \).
To solve \( \int \frac{\ln x}{x} \, dx \), use the substitution \( t = \ln x \), which implies \( dt = \frac{1}{x} dx \). This transforms the integral into \( \int t \, dt \).
Integrate \( \int t \, dt \) to get \( \frac{t^2}{2} + C \). Substitute back \( t = \ln x \) to express the antiderivative as \( \frac{(\ln x)^2}{2} + C \). Finally, evaluate this expression at the limits \( x=1 \) and \( x=4 \) to find the definite integral.

비슷한 문제에 대한 검증된 영상 답변:

이 영상 해법은 위 문제에 도움이 된다고 튜터들이 추천한 것입니다.
영상 길이:
3m
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주요 개념

질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.

Change of Logarithm Base

The integral involves logarithms with different bases (natural log and base 2). Converting all logarithms to a common base, typically the natural logarithm, simplifies the expression and makes integration manageable. Use the formula log_a(x) = ln(x) / ln(a) to rewrite log₂(x) in terms of ln(x).
추천 영상:
05:36
Change of Base Property

Properties of Logarithms

Understanding logarithm properties, such as the product, quotient, and power rules, helps simplify the integrand. In this problem, recognizing that ln(2)·log₂(x) can be expressed as ln(x) is key to reducing the integral to a simpler form that is easier to integrate.
추천 영상:
05:36
Change of Base Property

Integration of Logarithmic Functions

Integrating functions involving logarithms often requires techniques like substitution or integration by parts. For example, integrating (ln x)/x dx can be done by recognizing it as the derivative of (ln x)^2 / 2. Familiarity with these methods is essential to evaluate the integral correctly.
추천 영상:
5:26
Graphs of Logarithmic Functions